PSI - Issue 60
P.A. Jadhav et al. / Procedia Structural Integrity 60 (2024) 631–654 P. A. Jadhav et.al. / Structural Integrity Procedia 00 (2019) 000 – 000
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Saibaba, N., Vaibhaw, K., Neogy, S., Mani Krishna , K. V., Jha, S. K., Phani Babu , C., . . . Dey, G. K. 2013. Study of microstructure, texture and mechanical properties of Zr – 2.5Nb alloy pressure tubes fabricated with different processing routes. Journal of Nuclear Materials, 440, 319 331. Sawatzky, A., & Ells, C. E. 2000. Understanding Hydrogen in Zirconium. Zirconium in the Nuclear Industry: Twelfth International Symposium, STP 1354, ASTM International, June 15 – 18, pp. 32 – 48. West Conshohocken, PA. Scarth, D. A. 2002. A new procedure for evaluating flaws in CANDU nuclear reactor pressure tubes for the initiation of delayed hydride cracking. Manchester: PhD Thesis, University of Manchester. Scarth, D. A., & Smith, T. 2001. Developments in Flaw Evaluation for CANDU Reactor Zr-Nb Pressure Tubes. Journal of Pressure Vessel Technology, 123, 41-48. Scarth, D. A., & Smith, T. 2002. The effect of plasticity on process-zone predictions of DHC initiation at a flaw in CANDU reactor Zr-Nb pressure tubes. 2002 ASME Pressure Vessels and Piping Conference, August 5-9. Vancouver. Sinha, R. K., Sinha , S. K., & Madhusoodanan, K. 2008. Fitness for service assessment of coolant channels of Indian PHWRs. Journal of Nuclear Materials, 383, 14-21. Trelinski, M. 2007. Pressure tube flaws and artifacts observed in CANDU fuel channels; detection, sizing and characterization issues. IV Conferencia Panamericana de END. Buenos Aires. Walker, J. R. 1990. A probabilistic approach to leak-before-break in CANDU pressure tubes. International Journal of Pressure Vessels and Piping, Volume 43Issues 1 – 3, 229-239. Wasiluk, B., Carrol, B., Tsembelis, K., & Jin, J. 2019. Applications of Probabilistic Fracture Mechanics for Pressure Tubes. Transactions, SMiRT 25, 25th Conference on Structural Mechanics in Reactor Technology. Charlotte, NC, USA.
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